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Novel Approach for Harnessing Maximum Energy from PV Systems using Supercapacitors

机译:利用超级电容器利用光伏系统最大能量的新颖方法

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Typical standalone solar photovoltaic (PV) systems use battery bank as the energy storage device. The battery bank is charged by using a solar charge controller connected to a solar array. For similar PV systems, charging efficiency mostly depends on the efficiency of DC-DC converter available inside the charge controller. However, considerable amount of usable energy will be wasted during the charging process. In this work, a method is proposed to utilize this wasted energy while enhancing the end to end efficiency of standalone PV systems. When an empty capacitor is charged by an external source, it stores only a half of the energy delivered by the source as compared to the case of an electrochemical battery. As a result, 50% of useful energy is lost in the charging loop of a capacitor. If a useful resistive load is connected to this loop, some amount of energy can be utilized by doing a beneficial work. In this study, a DC-DC converter and battery bank has been chosen as the useful load in the capacitor charging loop, and a supercapacitor (SC) bank is used replacing the conventional capacitor. Therefore, total energy loss can be minimized by storing energy in both battery and SC bank. The energy stored in the SCs could be used for driving loads with required electronics. Consequently, it leads to an improvement of end to end efficiency of the PV system.
机译:典型的独立式太阳能光伏(PV)系统使用电池组作为能量存储设备。通过使用连接到太阳能电池阵列的太阳能充电控制器为电池组充电。对于类似的光伏系统,充电效率主要取决于充电控制器内部可用的DC-DC转换器的效率。但是,在充电过程中会浪费大量的可用能量。在这项工作中,提出了一种方法来利用这种浪费的能源,同时提高独立光伏系统的端到端效率。当空电容器由外部电源充电时,与电化学电池相比,它仅存储该电源所传递能量的一半。结果,在电容器的充电回路中损失了50%的有用能量。如果有用的电阻负载连接到此环路,则可以通过做有益的工作来利用一些能量。在这项研究中,选择了DC-DC转换器和电池组作为电容器充电环路中的有用负载,并使用超级电容器(SC)替代了常规电容器。因此,通过将能量存储在电池和SC库中,可以将总能量损失降至最低。 SC中存储的能量可用于驱动所需电子设备的负载。因此,这导致了PV系统的端到端效率的提高。

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